Related Experiment Video
Updated: Jan 27, 2026

Generating Homo- and Heterografts Between Watermelon and Bottle Gourd for the Study of Cold-responsive MicroRNAs
Published on: November 20, 2018
Root-growth Characteristics Contributing to Genotypic Variation in Nitrogen Efficiency of Bottle Gourd and Rootstock
Abdullah Ulas1, Esat Doganci2, Firdes Ulas3
1Soil Science and Plant Nutrition Department, Agricultural Faculty, Erciyes University, Kayseri 38039, Turkey. agrulas@erciyes.edu.tr.
Abstract:
In this study, two hydroponic experiments were conducted in nutrient solution growth system. Experiments were conducted in growth chamber of Erciyes University, Agricultural Faculty in Kayseri, Turkey. In the first experiment, 10 local Turkish bottle gourd genotypes and two commercial watermelon cultivars were screened under 2 N doses (0.3 mM and 3.0 mM N) in RBD design with three replications for six weeks. In the second experiment, four genotypes (N-efficient: 70-07 and 07-45, N-inefficient: 35-10 and 45-07) were selected and used as rootstock for grafting with N-inefficient watermelon cultivar (Crimson Sweet) under 2 N doses. The grafted N-efficient gourd genotypes (07-45 and 70-07) significantly contributed to growth and biomass production of the N-inefficient watermelon plants as compared to non-grafted control plants and thus showed a higher rootstock potential for watermelon. The N-efficiency of some gourd genotypes was associated with vigor root growth and active root system particularly at low N conditions. These traits could be useful characters to select 'N-efficient' bottle gourd rootstocks for sustainable agriculture in the future.
Related Concept Videos
Primary and Secondary Growth in Roots and Shoots
The Nitrogen Cycle
What is Variation?
The range, standard deviation, standard error, and variance are the different measures of variation.
Range: The range is the difference between its maximum and...
Meristems and Plant Growth
Characteristics of Life
Conservative Site-specific Recombination and Phase Variation
The recognition sites for Cre recombinase called LoxP...

